A63H13/16

DECORATIVE ASSEMBLY AND CONTROL METHOD THEREFOR
20260054188 · 2026-02-26 ·

The present application provides a decorative assembly, including a first container, a lid, a driving mechanism and a decorative article. The first container includes an accommodating cavity, the driving mechanism is mounted on the first container, the driving mechanism is connected to the decorative article, one side of the lid facing the accommodating cavity is rotatably connected to one side of the first container facing the lid, the driving mechanism selectively drives the decorative article to enter the accommodating cavity, and the driving mechanism selectively drives the lid to close the accommodating cavity. When the decorative article completely enters the accommodating cavity, the lid completely closes the accommodating cavity, thereby realizing the automatic closing of the lid and the automatic hiding of the decorative article, which satisfies the diverse demands of users, and further improves the practicality of the decorative assembly.

METHOD OF OPERATING AN AUTOMATIC FLY OUT OF THE BOX TOY
20260115606 · 2026-04-30 · ·

A flying to that automatically flies out of its container when the container is opened. A toy has a self-contained power source, a processor coupled to the power source by a circuit and a propeller driven by the actuator. The processor controls an actuator that drives the propeller. The toy defines an opening from an external surface to the circuit. A container for the toy defines a seat for the toy that uniquely forces an orientation of the toy when in the container. The container has a lid and a mechanical interrupter that inserts into the opening when the lid is closed. Opening the lid causes withdrawal of the mechanical interrupter to close the circuit. The toy automatically flies out of the container responsive to the circuit closing.

METHOD OF OPERATING AN AUTOMATIC FLY OUT OF THE BOX TOY
20260115606 · 2026-04-30 · ·

A flying to that automatically flies out of its container when the container is opened. A toy has a self-contained power source, a processor coupled to the power source by a circuit and a propeller driven by the actuator. The processor controls an actuator that drives the propeller. The toy defines an opening from an external surface to the circuit. A container for the toy defines a seat for the toy that uniquely forces an orientation of the toy when in the container. The container has a lid and a mechanical interrupter that inserts into the opening when the lid is closed. Opening the lid causes withdrawal of the mechanical interrupter to close the circuit. The toy automatically flies out of the container responsive to the circuit closing.